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Published on: August 8, 2022
Detection and functional characterization of a novel MEF2A variation responsible for familial dilated cardiomyopathy
Qi Qiao1, Cui-Mei Zhao2, Chen-Xi Yang1
1Department of Cardiology, Shanghai Fifth People's Hospital, Fudan University, Shanghai, P.R. China.
Insights
Genetic defects in the MEF2A gene cause dilated cardiomyopathy (DCM). This study identified a novel loss-of-function mutation in MEF2A, offering insights into DCM
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic Medicine
Background:
- Dilated cardiomyopathy (DCM) is a primary cause of heart failure, characterized by significant genetic heterogeneity.
- Over 100 genes are implicated in DCM pathogenesis, yet many genetic determinants remain unidentified.
- Understanding the genetic basis of DCM is crucial for diagnosis and treatment.
Purpose of the Study:
- To identify novel genetic variations contributing to dilated cardiomyopathy (DCM) in a consanguineous Chinese family.
- To elucidate the functional consequences of identified genetic variations on cardiac gene regulation.
- To investigate the role of MEF2A in the etiology of DCM.
Main Methods:
- Whole-exome sequencing and bioinformatical analysis were performed on a DCM family.
- Sanger sequencing was used to validate the identified variant in additional DCM cases and controls.
- Dual-luciferase assays were employed to assess the functional impact of the MEF2A variant.
Main Results:
- A heterozygous, loss-of-function nonsense variation (c.718G>T; p.Gly240*) in the MEF2A gene was identified and segregated with DCM in the family.
- The MEF2A variant was absent in control individuals and other DCM probands.
- Functional assays demonstrated that the variant impairs MEF2A's transactivation of target genes (MYH6, FHL2) and its synergy with GATA4.
Conclusions:
- Loss-of-function variations in MEF2A are a novel cause of human DCM.
- This finding provides new molecular insights into DCM pathogenesis.
- The results have implications for genetic testing and prognostic assessment in DCM patients.
Objectives:
Dilated cardiomyopathy (DCM) represents the most frequent form of cardiomyopathy, leading to heart failure, cardiac arrhythmias and death. Accumulating evidence convincingly demonstrates the crucial role of genetic defects in the pathogenesis of DCM, and over 100 culprit genes have been implicated with DCM. However, DCM is of substantial genetic heterogeneity, and the genetic determinants underpinning DCM remain largely elusive.
Methods:
Whole-exome sequencing and bioinformatical analyses were implemented in a consanguineous Chinese family with DCM. A total of 380 clinically annotated control individuals and 166 more DCM index cases then underwent Sanger sequencing analysis for the identified genetic variation. The functional characteristics of the variant were delineated by utilizing a dual-luciferase assay system.
Results:
A heterozygous variation in the MEF2A gene (encoding myocyte enhancer factor 2A, a transcription factor pivotal for embryonic cardiogenesis and postnatal cardiac adaptation), NM_001365204.1: c.718G>T; p. (Gly240*), was identified, and verified by Sanger sequencing to segregate with autosome-dominant DCM in the family with complete penetrance. The nonsense variation was neither detected in 760 control chromosomes nor found in 166 more DCM probands. Functional analyses revealed that the variant lost transactivation on the validated target genes MYH6 and FHL2, both causally linked to DCM. Furthermore, the variation nullified the synergistic activation between MEF2A and GATA4, another key transcription factor involved in DCM.
Conclusions:
The findings firstly indicate that MEF2A loss-of-function variation predisposes to DCM in humans, providing novel insight into the molecular mechanisms of DCM and suggesting potential implications for genetic testing and prognostic evaluation of DCM patients.
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